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Formation of an Ultrafine-Grained Austenite-Containing Microstructure from a Cold-Rolled Medium-Manganese Steel Processed Using Intercritical Annealing

机译:使用跨临界退火处理的冷轧介质 - 锰钢的含超细镓奥氏体微观结构的形成

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The behavior of 60% cold-rolled medium-manganese steel (0.1C5Mn) during intercritical annealing, has been examined using various techniques. Microstructural observations showed a slight coarsening of the subgrain/grain structure during intercritical annealing, without any apparent change in the misorientation distribution. In addition, the formation of ultrafine austenite grains took place mainly at high-angle boundaries and rarely at low angle boundaries, suggesting a heterogeneous austenite nucleation process in this steel. The results indicated that the annealing behavior of cold rolled medium manganese steels is controlled by the extensive recovery of the ferrite phase and formation of austenite phase with an austenite volume fraction of ~20%. It was proposed that the segregation of manganese and carbon to high-angle boundaries promoted austenite nucleation and growth, as such segregation decreases the Gibbs energy of austenite.
机译:使用各种技术检查了间临界退火期间60%冷轧中锰钢(0.1c5mn)的行为。微观结构观察表明,在临界退火期间粒子/晶粒结构的轻微粗化,没有任何明显变化的误导性分布。此外,超细奥氏体晶粒的形成主要处于高角度边界,并且很少处于低角度边界,表明该钢中的异质奥氏体成核方法。结果表明,冷轧介质锰钢的退火行为由铁氧体相的广泛回收和奥氏体相的形成,奥氏体体积分数为约20%。提出锰和碳对高角度边界的偏析促进了奥氏体成核和生长,因为这种偏析降低了奥氏体的吉布斯能量。

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